use crate::dataflow::channels::pact::Pipeline;
use crate::dataflow::operators::generic::builder_rc::OperatorBuilder;
use crate::dataflow::{Scope, Stream};
use crate::Data;
pub trait Partition<G: Scope, D: Data, D2: Data, F: Fn(D) -> (u64, D2)> {
fn partition(&self, parts: u64, route: F) -> Vec<Stream<G, D2>>;
}
impl<G: Scope, D: Data, D2: Data, F: Fn(D)->(u64, D2)+'static> Partition<G, D, D2, F> for Stream<G, D> {
fn partition(&self, parts: u64, route: F) -> Vec<Stream<G, D2>> {
let mut builder = OperatorBuilder::new("Partition".to_owned(), self.scope());
let mut input = builder.new_input(self, Pipeline);
let mut outputs = Vec::with_capacity(parts as usize);
let mut streams = Vec::with_capacity(parts as usize);
for _ in 0 .. parts {
let (output, stream) = builder.new_output();
outputs.push(output);
streams.push(stream);
}
builder.build(move |_| {
move |_frontiers| {
let mut handles = outputs.iter_mut().map(|o| o.activate()).collect::<Vec<_>>();
input.for_each(|time, data| {
let mut sessions = handles.iter_mut().map(|h| h.session(&time)).collect::<Vec<_>>();
for datum in data.drain(..) {
let (part, datum2) = route(datum);
sessions[part as usize].give(datum2);
}
});
}
});
streams
}
}